Reactive astrocytes mediate toxicity in iPSC derived dopaminergic neurons

星形胶质细胞 多巴胺能 黑质 神经炎症 神经科学 神经退行性变 中脑 致密部 生物 神经元 小胶质细胞 多巴胺 细胞生物学 神经胶质 帕金森病 胶质增生 炎症 化学 神经保护 胶质纤维酸性蛋白 平衡 神经毒性 多巴胺能途径 星形胶质增生 黑质纹状体通路 肿瘤坏死因子α LRRK2 MPTP公司
作者
Naroa Ibarra-Aizpurua,Jon Olano-Bringas,Benjamin Vallin,Lucy Crompton,Sally A. Cowley,Nora Bengoa‐Vergniory,Richard Wade‐Martins
出处
期刊:npj Parkinson's disease [Nature Portfolio]
标识
DOI:10.1038/s41531-026-01378-9
摘要

Neuroinflammation is a hallmark of Parkinson's disease (PD), a progressive neurodegenerative disorder characterized by the accumulation of α-synuclein and the death of dopaminergic neurons in the substantia nigra. Mutations in GBA are a common risk factor for PD, which can lead to lipid metabolism dysfunction, autophagy/lysosomal dysregulation, as well as the disruption of other cellular functions. In this study, we investigated the impact of the GBA-N370S mutation and astrocytic reactivity on α-synuclein pathology and neurotoxicity. To investigate the impact of reactive astrocytes on Parkinson's disease pathology, we employed iPSC-derived midbrain astrocyte and dopaminergic neuron co-cultures from control and GBA-N370S donors, as well as primary mouse midbrain astrocyte cultures and transcriptomic assays to examine the response of astrocytes to Tumor Necrosis Factor-α (TNFα) and Interferon-γ (IFNγ). We show that upon inflammatory stimuli astrocytes become reactive, leading to extensive transcriptional changes. RNAseq and experimental validation revealed that calcium transport and homeostasis were severely dysregulated, and functional studies confirmed that GBA-N370S astrocytes exhibited increased calcium release when treated with cytokines. We further explored the impact of inflammation on astrocytic neurosupport in an iPSC-derived dopaminergic neuron and astrocyte co-culture model finding that combined treatment of TNFα, IFNγ and α-synuclein pre-formed fibrils (PFFs) led to neurotoxic effects, suggesting that TNFα and IFNγ-activated astrocytes mediate α-synuclein PFF toxicity. Taken together, these data provide evidence of reduced neurosupport in both control and GBA-N370S iPSC-derived midbrain astrocytes exposed to inflammatory cytokines, suggesting a role for reactive astrocytes in PD pathology.
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